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缺乏H(+) - 焦磷酸酶会导致拟南芥叶片在无氨培养基上发育受损。

Lack of H(+)-pyrophosphatase Prompts Developmental Damage in Arabidopsis Leaves on Ammonia-Free Culture Medium.

作者信息

Fukuda Mayu, Segami Shoji, Tomoyama Takaaki, Asaoka Mariko, Nakanishi Yoichi, Gunji Shizuka, Ferjani Ali, Maeshima Masayoshi

机构信息

Laboratory of Cell Dynamics, Graduate School of Bioagricultural Sciences, Nagoya University Nagoya, Japan.

Laboratory of Cell Dynamics, Graduate School of Bioagricultural Sciences, Nagoya UniversityNagoya, Japan; Department of Biology, Tokyo Gakugei University, KoganeiTokyo, Japan.

出版信息

Front Plant Sci. 2016 Jun 10;7:819. doi: 10.3389/fpls.2016.00819. eCollection 2016.

Abstract

The plant vacuolar H(+)-pyrophosphatase (H(+)-PPase) functions as a proton pump coupled with the hydrolysis of pyrophosphate (PPi). Loss-of-function mutants (fugu5s and vhp1) of the H(+)-PPase of Arabidopsis thaliana show clear morphological phenotypes in the cotyledons, caused by inhibition of gluconeogenesis from seed storage lipids due to excessive accumulation of PPi. In this study, we investigated the phenotypes of the fugu5 and vhp1 mutants during vegetative growth under a specific nitrogen nutritional regime. When nitrate in the culture medium was the sole nitrogen source, growth of the mutant rosette leaves was severely compromised. Interestingly, trypan blue staining revealed notable cell death at the leaf blade-petiole junctions of young leaves, a region known to have meristematic features. Physical contact of the leaf tip with the culture medium also triggered leaf atrophy, suggesting that absorption of some elements through the hydathodes was probably involved in this phenotype. Prevention of such leaf-medium contact resulted in a marked decrease in phosphate content in the shoots, and suppressed leaf atrophy. Furthermore, fugu5 necrotic symptoms were rescued completely by heterologous expression of yeast cytosolic soluble pyrophosphatase IPP1 or uncoupling-type H(+)-PPases that retained only PPi-hydrolysis activity, indicating that the damage of actively proliferating cells was caused by the loss of the PPi-hydrolyzing function of H(+)-PPase. Importantly, cell death and growth defects of the fugu5 leaves were suppressed completely by the simple addition of ammonium (>1 mM) to the culture medium. The PPi content in the shoots of fugu5 grown on ammonium-free medium was 70% higher than that of the wild type, and PPi levels were restored to normal upon growth on ammonium-supplemented medium. Together, these findings suggest that the PPi-hydrolyzing activity of H(+)-PPase is essential to maintain the PPi contents at optimal levels when grown on ammonium-free culture medium, and any direct contact of the leaves with the culture medium may raise PPi levels in the leaves through increased phosphate uptake.

摘要

植物液泡H⁺-焦磷酸酶(H⁺-PPase)作为一种与焦磷酸(PPi)水解偶联的质子泵发挥作用。拟南芥H⁺-PPase的功能缺失突变体(fugu5s和vhp1)在子叶中表现出明显的形态学表型,这是由于PPi的过度积累抑制了种子储存脂质的糖异生作用所致。在本研究中,我们研究了fugu5和vhp1突变体在特定氮营养条件下营养生长期间的表型。当培养基中的硝酸盐是唯一氮源时,突变体莲座叶的生长严重受损。有趣的是,台盼蓝染色显示幼叶叶片-叶柄连接处有明显的细胞死亡,该区域具有分生组织特征。叶尖与培养基的物理接触也会引发叶片萎缩,这表明通过水孔吸收某些元素可能与这种表型有关。防止叶片与培养基的这种接触会导致地上部磷酸盐含量显著降低,并抑制叶片萎缩。此外,通过酵母胞质可溶性焦磷酸酶IPP1或仅保留PPi水解活性的解偶联型H⁺-PPases的异源表达,fugu5坏死症状完全得到挽救,这表明活跃增殖细胞的损伤是由H⁺-PPase的PPi水解功能丧失引起的。重要的是,在培养基中简单添加铵(>1 mM)可完全抑制fugu5叶片的细胞死亡和生长缺陷。在无铵培养基上生长的fugu5地上部PPi含量比野生型高70%,在添加铵的培养基上生长时PPi水平恢复正常。总之,这些发现表明,当在无铵培养基上生长时,H⁺-PPase的PPi水解活性对于将PPi含量维持在最佳水平至关重要,并且叶片与培养基的任何直接接触可能通过增加磷酸盐吸收而提高叶片中的PPi水平。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fc86/4901044/5ccbd2f15537/fpls-07-00819-g001.jpg

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